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Distributed cooperative communications in wireless networks.

机译:无线网络中的分布式协作通信。

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摘要

The primary challenge in wireless networks, unlike wireline networks, is the existence of interference and channel variations (fading). Having more users at higher data rates means that current point-to-point networks will not scale. To engineer a scalable network, a new paradigm is needed to exploit different network characteristics. We show that cooperation between users in the network can effectively exchange possible interferences from other users in favor of useful information.; In this thesis, we explore the problem of source and channel coding over wireless networks, ranging from information theoretical analysis to code design and practical implementation issues. We show that significant gains in throughput can be achieved through network coding. Despite the importance of the problem and the work done in this area, little is known about network coding and the optimal relaying function at the intermediate nodes. A notable example is the communication over the relay channel, the simplest form of a network, that has been an outstanding question in the last three decades.; We propose new approaches to network coding that improve upon the best known coding schemes by many dB. Specifically, we develop two main coding techniques, one for the multi-state relay channel and the other for the multiple access channel with generalized feedback (MAC-GF). These coding techniques enable us to achieve higher rates than those previously known for the relay and MAC-GF channels. The first technique provides some capacity results for both half-duplex and the original relay channel. The new capacity results for the relay channel are the only known results besides Cover's in 1979 and El Gamal's in 1982. The second coding technique improves the best known achievable rate for the MAC-GF by Willems in 1983. This results also provides a new achievable rate for the Gaussian relay channel which improves over all other known schemes for some channel conditions.; We also present a practical code design technique for the relay channel. The design gains more then 4dB over direct transmission and close the gap to the relay channel Shannon limit to less than 1dB with a code length of only 2 x 104 bits.
机译:与有线网络不同,无线网络的主要挑战是干扰和信道变化(衰落)的存在。以更高的数据速率拥有更多的用户意味着当前的点对点网络将无法扩展。为了设计可扩展网络,需要一种新的范例来利用不同的网络特征。我们表明,网络中用户之间的合作可以有效地交换来自其他用户的可能的干扰,以提供有用的信息。在本文中,我们探讨了无线网络中源和信道编码的问题,从信息理论分析到代码设计和实际实现问题。我们表明,通过网络编码可以显着提高吞吐量。尽管问题的重要性和在这一领域所做的工作,对网络编码和中间节点的最佳中继功能知之甚少。一个值得注意的例子是通过中继信道的通信,这是最简单的网络形式,在过去的三十年中一直是一个悬而未决的问题。我们提出了新的网络编码方法,该方法将最著名的编码方案提高了许多dB。具体来说,我们开发了两种主要的编码技术,一种用于多状态中继信道,另一种用于具有广义反馈(MAC-GF)的多路访问信道。这些编码技术使我们能够实现比以前已知的中继和MAC-GF信道更高的速率。第一种技术为半双工和原始中继信道提供了一些容量结果。除了1979年的Cover和1982年的El Gamal之外,中继信道的新容量结果是唯一已知的结果。第二种编码技术提高了1983年Willems对MAC-GF的最佳可实现速率。这一结果也提供了一个新的可实现的结果。高斯中继信道的速率在某些信道条件下比所有其他已知方案有所提高。我们还为中继通道提供了一种实用的代码设计技术。在仅2 x 104位的代码长度下,该设计在直接传输时的增益超过4dB,并缩小了与中继通道Shannon极限的差距,使其小于1dB。

著录项

  • 作者

    Khojastepour, Mohammad Ali.;

  • 作者单位

    Rice University.;

  • 授予单位 Rice University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 312 p.
  • 总页数 312
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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